Claims
- 1. A non-volatile memory device, comprising:
a substrate having a first active region and a second active region; a first floating gate provided over the first active region and having an edge, the first floating gate being made of a conductive material; a first spacer connected to the edge of the first floating gate and being made of the same conductive material as that of the first floating gate; and a control gate provided proximate to the floating gate.
- 2. The non-volatile memory device of claim 1, further comprising:
a field trench structure separating the first and second active regions; a second floating gate provided over the second active region and having an edge, the second floating gate being made of the same conductive material; a second spacer connected to the edge of the second floating gate.
- 3. The non-volatile memory device of claim 1, wherein the conductive material of the first floating gate and the spacer is polysilicon.
- 4. The non-volatile memory device of claim 1, wherein the device is a flash memory.
- 5. The non-volatile memory device of claim 1, wherein the spacer has a sloping edge that is substantially less than 90 degrees.
- 6. The non-volatile memory device of claim 1, wherein the space has a slope of less than about 50 degrees.
- 7. The non-volatile memory device of claim 1, further comprising:
a metal layer formed over the control gate, wherein the spacer has a slope that is substantially less than 90 degrees to prevent formation of a void within the metal layer.
- 8. A flash memory device, comprising:
a substrate having a first active region and a second active region; a field trench oxide separating the first and second active regions; a floating gate provided over the first active region and having an edge, the first floating gate being made of polysilicon; a spacer coupled to the edge of the floating gate and being made of polysilicon, the spacer having a slope less than about 60 degrees; a control gate overlying the floating gate; and a metal layer provided over the control gate, wherein the spacer reduces formation of a void in the metal layer.
- 9. A method of fabricating a non-volatile memory device, comprising:
forming a polysilicon floating gate over a substrate, the floating gate having an edge; forming a polysilicon spacer joined to the edge of the floating gate, the spacer having a sloping edge having a slope less than 60 degrees; and forming a polysilicon control gate over the floating gate and the spacer.
- 10. The method of claim 9, further comprising:
forming a tungsten silicon layer over the control gate and the spacer.
- 11. The method of claim 9, wherein the device is a flash memory.
- 12. The method of claim 9, wherein the floating gate, spacer, and control gates are formed from three different polysilicon layers.
- 13. The method of claim 9, wherein the spacer has a slope of less than about 50 degrees.
- 14. The method of claim 9, further comprising:
forming a dielectric layer over the floating gate that is removed after the spacer has been formed.
- 15. A non-volatile memory device, comprising:
a substrate having a first active region and a second active region; an isolation structure separating the first and second active regions; a first floating gate provided over the first active region and having a first edge, the first floating gate being made of a conductive material; a first spacer connected to the first edge of the first floating gate and having a first sloping edge, the first spacer being of a conductive material and overlying the isolation structure; and a control gate provided proximate to the floating gate.
- 16. The device of claim 15, wherein the first sloping edge of the first spacer forms an angle of less than 65 degrees to facilitate deposition of material over the first spacer and the isolation structure.
- 17. The device of claim 15, further comprising:
a second floating gate provided over the second active region and having a second edge, the second floating gate being of the same conductive material as the first floating gate; a second spacer connected to the second edge of the second floating gate and having a second sloping edge, the second spacer being of a conductive material and overlying the isolation structure and electrically isolation from the first spacer; a metal layer overlying the first and second floating gates and the isolation structure, wherein each of the first and second sloping edges forms an angle of less than 65 degrees, so that a portion of the metal layer overlying the isolation structure is substantially free of a void.
- 18. The device claim 17, wherein the first and second floating gates and the first and second spacers are polysilicon.
- 19. The device claim 17, wherein the metal layer includes tungsten or aluminum.
- 20. A method for fabricating a non-volatile memory device, the method comprising:
forming a first polysilicon layer over an isolation structure and first and second regions of a substrate, the first and second regions being defined by the isolation structure; forming a dielectric layer overlying the first polysilicon layer; etching the first polysilicon layer and the dielectric layer to expose a portion of the isolation structure, the etching step defining a first edge associated with the first region and a second edge associated with the second region; forming a second polysilicon layer over the exposed portion of the isolation structure, the second polysilicon layer contacting the first and second edges; etching the second polysilicon layer to form a first spacer joined to the first edge and a second spacer joined to the second edge; forming an interpoly dielectric layer overlying the first and second spacers and the first polysilicon layer; forming a third polysilicon layer overlying the interpoly dielectric layer; and forming a metal layer over lying the third polysilicon layer.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority to U.S. Provisional Patent Application No. 60/383,470, filed on May 24, 2002, which is incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60383470 |
May 2002 |
US |